Search bioRxiv⌕ Search

Biology subjects

Tamai, Y.

Publications and source records attributed to Tamai, Y..

3 recordsLinked to original sources

Laser-induced auditory perception: transtympanic laser irradiation of the cochlea from the outer ear evokes an auditory-related neural and behavioral response

Brain-machine interfaces are emerging devices that act as a medium for communication between the neural system and external software and hardware. Over the last decade, there has been a discussion on applying infrared laser stimulation to the brain-machine interfaces, including cochlear implants. Infrared lasers can selectively activate neural populations without introducing exogenous agents to tissues. This study presents the first demonstration that laser irradiation of the cochlea, a peripheral sensory organ, can elicit a clear behavioral auditory response. Mongolian gerbils (Meriones unguiculatus) were divided into two groups, each subjected to classical conditioning where a reward water delivery was predicted by either cochlear laser stimulation or sound stimulus. Laser-conditioned animals successfully learned licking behavior, with conditioned responses and behavioral properties comparable to auditory-conditioned animals. The laser-evoked response was significantly inhibited by auditory masking, and auditory-conditioned animals demonstrated stimulus generalization to laser stimulation. In a subsequent experiment, simultaneous presentation of auditory and laser stimulation induced nonlinear amplification in both auditory cortical and behavioral responses, suggesting that combining auditory and laser stimulation can enhance auditory perception beyond the effects of each stimulus alone. These findings indicate that infrared laser irradiation of the cochlea can potentially evoke and enhance auditory perception, making it a promising candidate for implementation in auditory prostheses.

neuroscience↗

Safety margin evaluations for transtympanic laser stimulation of the cochlea from the outer ear in Mongolian gerbils (Meriones unguiculatus)

Infrared laser cochlear stimulation has been suggested as an alternative to traditional auditory prostheses. Previous research has mainly examined the short-term effects of laser stimulation, but to effectively use this technique, it is necessary to study whether prolonged laser exposure can safely and sustainably induce cochlear responses. This study assessed the effect of laser-induced cochlear damage using classically-conditioned Mongolian gerbils. The white noise was presented as a conditioned stimulus, and reward licking was recorded as a conditioned response. After training, the subjects cochlea was exposed to a continuous pulsed laser for 15 h. The licking rate drastically decreased after the exposure of 26.4 W/cm2, while it did not change after 6.6 W/cm2 or weaker. These findings showed, for the first time, that the safety margin of long-term, at least several hours, cochlear laser stimulation exists and will contribute to the safe and effective delimitation of laser parameters in future research.

bioengineering↗

Feasibility evaluation of transtympanic laser stimulation of the cochlea from the outer ear

Infrared laser stimulation has been studied as an alternative approach to auditory prostheses. This study evaluated the feasibility of infrared laser stimulation of the cochlea from the outer ear bypassing the middle ear function. An optic fiber was inserted into the ear canal and a laser was used to irradiate the cochlea through the tympanic membrane in Mongolian gerbil. A pulsed infrared laser (10.1 mJ/cm2) and clicking sound (70 peak-to-peak equivalent sound pressure level) were presented to the animals. The amplitude of the laser-evoked cochlear response was systematically decreased following insertion of a filter between the tympanic membrane and cochlea; however, the auditory-evoked cochlear response did not decrease. The filter was removed and the laser-evoked response returned to around the original level. The amplitude ratio and the relative change in response amplitude before and during filter insertion significantly decreased as the absorbance of the infrared filter increased. These results indicate that laser irradiation could bypass the function of the middle ear and directly activate the cochlea. Therefore, an auditory prosthesis based on laser stimulation represents a possible noninvasive alternative to conventional auditory prostheses requiring surgical implants.

neuroscience↗